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Recent Advances in Mussel-Inspired Synthetic Polymers as Marine Antifouling Coatings

机译:贻贝启发合成聚合物的最新进展作为海洋防污涂料

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Synthetic oligomers and polymers inspired by the multifunctional tethering system (byssus) of the common mussel (genus Mytilus) have emerged since the 1980s as a very active research domain within the wider bioinspired and biomimetic materials arena. The unique combination of strong underwater adhesion, robust mechanical properties and self-healing capacity has been linked to a large extent to the presence of the unusual α-amino acid derivative l-DOPA (l-3,4-dihydroxyphenylalanine) as a building block of the mussel byssus proteins. This paper provides a short overview of marine biofouling, discussing the different marine biofouling species and natural defenses against these, as well as biomimicry as a concept investigated in the marine antifouling context. A detailed discussion of the literature on the Mytilus mussel family follows, covering elements of their biology, biochemistry and the specific measures adopted by these mussels to utilise their l-DOPA-rich protein sequences (and specifically the ortho-bisphenol (catechol) moiety) in their benefit. A comprehensive account is then given of the key catechol chemistries (covalent and non-covalent/intermolecular) relevant to adhesion, cohesion and self-healing, as well as of some of the most characteristic mussel protein synthetic mimics reported over the past 30 years and the related polymer functionalisation strategies with l-DOPA/catechol. Lastly, we review some of the most recent advances in such mussel-inspired synthetic oligomers and polymers, claimed as specifically aimed or intended for use in marine antifouling coatings and/or tested against marine biofouling species.
机译:自20世纪80年代以来,由20世纪80年代作为较宽的生物染色和仿生材料竞技场内的非常活跃的研究结构域以来,由普通贻贝(毫霉菌)的合成低聚物和聚合物。强大的水下粘附,强大的机械性能和自我愈合能力的独特组合在很大程度上与不寻常的α-氨基酸衍生物L-DOPA(L-3,4-二羟基苯基丙氨酸)的存在相连。作为构建块贻贝的蛋白质蛋白质。本文提供了海洋生物污染的简短概述,讨论了与这些的不同海洋生物污染物种和自然防御,以及作为在海洋防污背景中调查的概念的生物化。对Mytilus Mussel家族的文献进行了详细讨论,涉及其生物学,生物化学和这些贻贝采用的具体措施的详细讨论,以利用其L-DOPA的富蛋白质序列(以及特别是邻酚(儿茶酚)部分)在他们的好处。然后给出了与粘附,凝聚力和自我愈合相关的关键儿茶酚化学物质(共价和非共价/分子)的综合叙述,以及过去30年中报告的一些最具特色的贻贝蛋白质合成模拟物具有L-DOPA /儿茶酚的相关聚合物官能化策略。最后,我们审查了这种贻贝启发的合成低聚物和聚合物中最近的一些最新进展,要求保护,如用于在海洋防污涂层和/或对海洋生物污垢物种测试中使用的。

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